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    • 1. 发明申请
    • METHOD AND APPARATUS FOR ABSORBING THERMAL ENERGY
    • US20170268829A1
    • 2017-09-21
    • US15478553
    • 2017-04-04
    • Rini Technologies, Inc.
    • Daniel P. RINILouis CHOW
    • F28D20/02
    • F28D20/023Y02E60/145Y10S165/902
    • The subject invention pertains to a method and apparatus for storing thermal energy. The subject thermal energy storage apparatus can function as a heat absorber in a cooling system. A cooling system can incorporate a cooling cycle that utilizes thermal energy storage and has two coolant loops. The primary cooling loop acquires the waste heat from a heat source, such as an electronic device, by heat transfer to the primary coolant via, for example, a sensible heat process (where sensible heat is heat absorbed or transmitted by a substance during a change in temperature which is not accompanied by a change of state) or by evaporating the primary coolant through a latent heat phase change process. The waste heat absorbed by the primary coolant is transferred to the host material of the heat absorber. The subject invention uses a high thermal conductivity host material to house a lower thermal conductivity phase change material, in order to achieve a thermal energy absorber that has a high effective thermal conductivity. In a specific embodiment, the high thermal conductivity host material has voids within the structure that can be filled by the phase change material. The increased surface area of phase change material in thermal contact with the host material per volume of phase change material allows the thermal energy to be stored or released quickly, because of the enhanced effective thermal conductivity.
    • 3. 发明申请
    • Modular, stackable, geothermal block system
    • 模块化,可堆叠,地热块系统
    • US20100236749A1
    • 2010-09-23
    • US12383270
    • 2009-03-23
    • John Stojanowski
    • John Stojanowski
    • F25B27/00F24J3/08
    • F24T10/15F28F9/26F28F2013/006Y02E10/125Y10S165/902
    • A modular, stackable, geothermal block system for use as a subterranean or submarine heat exchanger in a geothermal energy system which provides a heating/cooling means to an external load. The stackable blocks, which can be filled with a fluid and/or material of generally high heat retention characteristics or precast in such material, contain one or more continuous passageways that extend from the top face of the block through the opposing face, through which a rigid structural heat exchange tube, fabricated from material of high thermal conductivity, is placed. The blocks are stacked one upon another and slidably mounted on the tube(s). Each tube contains a helically wound, thermal transfer tubing comprising one leg of a U-shape configured loop. Each stackable block can contain multiple paired passageways permitting more than one U-shape loop within the system.
    • 一种用于地热能系统中的地下或海底热交换器的模块化,可堆叠的地热块系统,其向外部负载提供加热/冷却装置。 可填充流体和/或这种材料中通常具有高保温特性或预制件的材料的可堆叠块包含一个或多个连续的通道,其从块的顶面延伸通过相对面, 放置由导热性高的材料制成的刚性结构热交换管。 这些块彼此堆叠并可滑动地安装在管上。 每个管包含螺旋缠绕的热传递管,其包括U形配置环的一个腿。 每个可堆叠块可以包含多个成对的通道,允许系统内的多个U形回路。
    • 5. 发明授权
    • Heat storing device
    • 储热装置
    • US07406998B2
    • 2008-08-05
    • US11357477
    • 2006-02-17
    • Tomohide Kudo
    • Tomohide Kudo
    • F28D17/04F28F3/04
    • F28D20/02Y02E60/145Y10S165/902
    • A heat storing device for exchanging heat energy between a heat storing material and a fluid. The heat storing device has a heat storing module having heat storing material spaces filled with a heat storing material and fluid passages for a fluid to flow through adjacent to the heat storing material spaces. The heat storing module includes multiple plates in a stack. Each of the multiple plates has fluid passages in one side thereof. In mutually adjacent pairs of plates, the sides having the fluid passages face each other. When each pair of plates is seen face-on, with respect to the fluid passages of one of the plates, the fluid passages of the other plate intersect substantially at right angles, and the fluid passages of the two plates connect at these positions where they intersect.
    • 一种用于在储热材料和流体之间交换热能的储热装置。 储热装置具有储热模块,该蓄热模块具有填充有储热材料的蓄热材料空间和用于使流体相邻于储热材料空间流动的流体通道。 储热模块包括堆叠中的多个板。 每个多个板在其一侧具有流体通道。 在彼此相邻的板对中,具有流体通道的侧面彼此面对。 当每对板相对于一个板的流体通道被看到时,另一个板的流体通道基本上以直角相交,并且两个板的流体通道在这些位置处连接 相交。
    • 6. 发明授权
    • Compressor heat regenerative system
    • 压缩机热再生系统
    • US07189065B2
    • 2007-03-13
    • US10616192
    • 2003-07-09
    • Kevin F. Dudley
    • Kevin F. Dudley
    • F01M5/00F04B23/00
    • F04B39/0207F04B39/06Y10S165/902
    • A regenerative source of heat is provided for the oil used to lubricate a compressor within a heating, cooling or refrigeration system. The regenerative source absorbs heat from the oil when it is circulating through the compressor at a relatively high temperature. The regenerative source gives up heat to the oil following deactivation of the compressor. The source of heat includes a thermal phase change material that is preferably a hydrated salt capable of storing sufficient thermal energy to maintain the oil above any temperatures that would cause damage to the moving parts of the compressor.
    • 为用于在加热,制冷或制冷系统中润滑压缩机的油提供再生热源。 再生源在相对较高的温度下循环通过压缩机时从油中吸收热量。 再生源在压缩机停用后会放出热量。 热源包括热相变材料,其优选是能够储存足够热能以将油保持在任何可能对压缩机的运动部件造成损害的温度的水合盐。
    • 7. 发明申请
    • Heat storing device
    • 储热装置
    • US20060196632A1
    • 2006-09-07
    • US11357477
    • 2006-02-17
    • Tomohide Kudo
    • Tomohide Kudo
    • F28D19/00
    • F28D20/02Y02E60/145Y10S165/902
    • A heat storing device for exchanging heat energy between a heat storing material and a fluid. The heat storing device has a heat storing module having heat storing material spaces filled with a heat storing material and fluid passages for a fluid to flow through adjacent to the heat storing material spaces. The heat storing module includes multiple plates in a stack. Each of the multiple plates has fluid passages in one side thereof. In mutually adjacent pairs of plates, the sides having the fluid passages face each other. When each pair of plates is seen face-on, with respect to the fluid passages of one of the plates, the fluid passages of the other plate intersect substantially at right angles, and the fluid passages of the two plates connect at these positions where they intersect.
    • 一种用于在储热材料和流体之间交换热能的储热装置。 储热装置具有储热模块,该蓄热模块具有填充有储热材料的蓄热材料空间和用于使流体相邻于储热材料空间流动的流体通道。 储热模块包括堆叠中的多个板。 每个多个板在其一侧具有流体通道。 在彼此相邻的板对中,具有流体通道的侧面彼此面对。 当每对板相对于一个板的流体通道被看到时,另一个板的流体通道基本上以直角相交,并且两个板的流体通道在这些位置处连接 相交。
    • 10. 发明授权
    • Latent heat storage device
    • 潜热储存装置
    • US06889751B1
    • 2005-05-10
    • US09678990
    • 2000-10-04
    • Henry LukasCharles G. GasperJeffrey A. LogicScott R. LarrabeeC. James RogersMark G. VossAlan P. MeissnerB. Joseph Fietkiewicz
    • Henry LukasCharles G. GasperJeffrey A. LogicScott R. LarrabeeC. James RogersMark G. VossAlan P. MeissnerB. Joseph Fietkiewicz
    • B60H1/00F28D20/02F28D19/00
    • B60H1/00492F28D20/02Y02E60/145Y10S165/902Y10S165/906
    • A low volume, high capacity latent heat storage device is achieved in a construction including a salt case (12) with an optional outer jacket (10) surrounding the salt case (12) in spaced relation thereto to define an insulating space (14) between the two. Inlet and outlet conduits (38), (42), (44), (46), extend from the exterior of the outer jacket (10) to the interior of the salt case (12) and at least one tube (20) is located within the salt case and has a plurality of straight, parallel runs (21) defining a matrix with an exterior and a phase change material is sealed within the tube (20). The tube runs (21) inwardly of the matrix exterior are in a regular or equilateral polygonal pattern with each run (21) abutting a plurality of adjacent runs (21) and each run (21) at the exterior of the matrix additionally engaging the salt jacket (12). The runs (21) have cross-sectional shapes such that flow spaces (102, (104) exist between the runs (21) and between the salt jacket (12) as well between adjacent runs (21). The flow spaces (102), (104) are in fluid communication with the inlet and outlet conduits (38), (42), (44), (46).
    • 在包括盐壳(12)的结构中实现了低容量,高容量的潜热储存装置,所述盐壳具有围绕所述盐壳(12)的间隔关系的任选外护套(10),以在所述盐壳(12)之间形成绝缘空间 他们俩。 入口和出口导管(38),(42),(44),(46)从外护套(10)的外部延伸到盐盒(12)的内部,并且至少一个管(20) 位于盐壳内并且具有多个直的平行的行程(21),其限定具有外部的矩阵,并且相变材料被密封在管(20)内。 在矩阵外部向内运行的管(21)处于规则的或等边的多边形图案中,每个行程(21)邻接多个相邻的行程(21),并且每个行程(21)在矩阵的外部另外接合盐 夹克(12)。 行程(21)具有横截面形状,使得在相邻行程(21)之间的行程(21)之间和盐套(12)之间也存在流动空间(102,(104)),流动空间(102) (104)与入口和出口管道(38),(42),(44),(46)流体连通。